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Metabolic Competition between Non-reducing Polyketide Synthases Drives Hidden Chemodiversity in Deep-Sea Fungus Talaromyces radicus
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Metabolic Competition between Non-reducing Polyketide Synthases Drives Hidden Chemodiversity in Deep-Sea Fungus Talaromyces radicus

Jun Wu, Wei-Chen Chen, Bowei Wen, Jing Chen, Zhuoyue Yang, Ke Lu, Zhaoxin Yao, Zhicheng Guo, Hui Qiu, Zixin Deng, …
Organic letters, 卷.28(10), 頁碼.3107-3111
13/03/2026
PMID: 41609103
Web of Science ID: WOS:001674311700001

摘要

Chemistry Chemistry, Organic Physical Sciences Science & Technology
Genome mining of Talaromyces radicus WHUF04045 identified two unusual nrPKSs (Tr4942 and Tr2381) with distinct release mechanisms, whose precursor competition was revealed by multiomics, gene deletion, and heterologous expression. Deletion of Tr4942 activated nine new chromone derivatives (1-9) and four new naphthoquinone derivatives (11-14), which displayed significant pro-angiogenic and anti-inflammatory activities, with compound 8 showing significant anti-inflammatory effects via modulation of the NF-kappa B signaling pathway.

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